On the Design of a High Data Rate Underwater Acoustic Receiver

Amal Samir, B. ElDiwany, Ahmad Elmoslimany, M. Nafie, Sherif ElAzzouni, T. Elbatt
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Abstract

In this paper, we propose a novel design for a high-speed underwater acoustic (UWA) receiver chain. Towards this objective, we introduce a novel closed-loop, adaptive, single-rate Doppler scale estimation and compensation algorithm and a novel dual-domain channel estimation and equalization technique. We validate our results and evaluate the proposed schemes using extensive simulations based on channel models generated from the analysis of the Kauai Acomms MURI 2011 (KAM11) UWA communications experiment's recording. The extensive simulations show that the proposed algorithms exhibit superior performance compared to the state-of-the-art.
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一种高数据速率水声接收机的设计
本文提出了一种高速水声(UWA)接收链的新设计。为此,我们提出了一种新的闭环、自适应、单速率多普勒尺度估计和补偿算法,以及一种新的双域信道估计和均衡技术。我们验证了我们的结果,并使用基于Kauai Acomms MURI 2011 (KAM11) UWA通信实验记录分析生成的信道模型的广泛模拟来评估所提出的方案。大量的仿真表明,所提出的算法与最先进的算法相比具有优越的性能。
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